The Japan Times - Artificial cloud brightening could tame El Nino, but with risks: study

EUR -
AED 4.287573
AFN 77.044419
ALL 92.698171
AMD 425.605969
ANG 2.089281
AOA 1071.616295
ARS 1764.723009
AUD 1.630964
AWG 2.096831
AZN 1.98714
BAM 1.958204
BBD 2.351827
BDT 143.688215
BGN 1.980232
BHD 0.440028
BIF 3490.340137
BMD 1.167338
BND 1.483647
BOB 13.445388
BRL 6.01284
BSD 1.167658
BTN 111.356298
BWP 15.633989
BYN 3.522784
BYR 22879.821635
BZD 2.348462
CAD 1.614668
CDF 2658.612717
CHF 0.936324
CLF 0.027094
CLP 1066.362501
CNY 7.84702
CNH 7.842036
COP 3614.544883
CRC 529.761597
CUC 1.167338
CUP 30.934453
CVE 110.634412
CZK 24.078649
DJF 207.458821
DKK 7.475019
DOP 68.58156
DZD 155.267566
EGP 58.85425
ERN 17.510068
ETB 187.357105
FJD 2.604623
FKP 0.856471
GBP 0.855489
GEL 3.040903
GGP 0.856471
GHS 13.06272
GIP 0.856471
GMD 85.812284
GNF 10246.302956
GTQ 8.908859
GYD 244.294625
HKD 9.150586
HNL 31.377633
HRK 7.534582
HTG 152.756191
HUF 361.100758
IDR 20635.030971
ILS 3.477611
IMP 0.856471
INR 111.175391
IQD 1529.212568
IRR 1604593.409224
ISK 141.201362
JEP 0.856471
JMD 185.327479
JOD 0.827593
JPY 185.859973
KES 151.100239
KGS 102.083147
KHR 4718.966012
KMF 493.783844
KPW 1050.604398
KRW 1614.323782
KWD 0.360205
KYD 0.973082
KZT 534.677736
LAK 26206.734584
LBP 104535.103182
LKR 383.535696
LRD 194.420533
LSL 18.723745
LTL 3.446845
LVL 0.706111
LYD 7.383385
MAD 10.814805
MDL 20.177507
MGA 5048.736462
MKD 61.596397
MMK 2451.141868
MNT 4198.374181
MOP 9.42725
MRU 46.809194
MUR 56.557572
MVR 18.046981
MWK 2027.666415
MXN 19.778667
MYR 4.717907
MZN 74.598726
NAD 18.724057
NGN 1572.439072
NIO 42.850579
NOK 10.870781
NPR 178.176754
NZD 1.954381
OMR 0.448825
PAB 1.167723
PEN 3.914664
PGK 5.15554
PHP 71.93778
PKR 324.082162
PLN 4.302866
PYG 6999.591587
QAR 4.25436
RON 5.256528
RSD 117.306315
RUB 97.708275
RWF 1715.986623
SAR 4.387195
SBD 9.36132
SCR 16.215984
SDG 702.157606
SEK 11.051654
SGD 1.481719
SHP 0.864841
SLE 28.775102
SLL 24478.489902
SOS 667.134057
SRD 44.267803
STD 24161.536411
STN 24.922663
SVC 10.217541
SYP 15177.726467
SZL 18.712605
THB 38.191749
TJS 10.765784
TMT 4.097356
TND 3.371858
TOP 2.810669
TRY 56.139381
TTD 7.932907
TWD 37.214376
TZS 3093.442949
UAH 52.170136
UGX 4355.401965
USD 1.167338
UYU 46.938217
UZS 13803.77006
VES 914.822177
VND 30481.525639
VUV 138.09769
WST 3.170424
XAF 656.749056
XAG 0.016948
XAU 0.000251
XCD 3.154789
XCG 2.104519
XDR 0.825368
XOF 659.545505
XPF 119.331742
YER 276.736706
ZAR 18.616535
ZMK 10507.446759
ZMW 22.238105
ZWL 375.882308
  • RBGPF

    1.3300

    69.89

    +1.9%

  • CMSC

    0.1120

    21.34

    +0.52%

  • BCC

    -1.8100

    80.43

    -2.25%

  • GSK

    0.2850

    52.065

    +0.55%

  • NGG

    0.8300

    81.25

    +1.02%

  • CMSD

    0.1700

    21.23

    +0.8%

  • BP

    -0.7000

    43.04

    -1.63%

  • BTI

    -0.3400

    56.37

    -0.6%

  • RYCEF

    0.5500

    20.8

    +2.64%

  • BCE

    -0.3350

    23.515

    -1.42%

  • RELX

    -0.5550

    35.835

    -1.55%

  • RIO

    2.0100

    106.81

    +1.88%

  • JRI

    0.0920

    12.462

    +0.74%

  • VOD

    0.0950

    16.075

    +0.59%

  • AZN

    2.5150

    169.225

    +1.49%

Artificial cloud brightening could tame El Nino, but with risks: study
Artificial cloud brightening could tame El Nino, but with risks: study / Photo: - - NOAA/AFP/File

Artificial cloud brightening could tame El Nino, but with risks: study

A brewing "Super" El Nino cycle is poised to unleash heat waves, floods and drought worldwide, with the effects amplified by long term human-caused climate change.

Text size:

But what if it was possible to interrupt and effectively "switch off" the Pacific Ocean heating phenomenon as it starts to form?

That's the premise of a new Science Advances study published Wednesday, which uses computer models to show that artificially brightening clouds over the Pacific, when timed right, could neutralize the influential weather pattern and blunt its worst impacts.

While previous research on so-called geoengineering has focused on cooling the planet as a whole, the new paper instead proposes more targeted interventions.

"These shorter timescales of interventions could be a very powerful way that geoengineering enters this portfolio of responses to climate change," lead author Jessica Wan, a postdoctoral researcher at the University of Chicago, told AFP.

Prior research had shown that the "Black Summer" bushfires that scorched Australia in 2019-2020 played a key role in creating a multi-year La Nina, the cool phase of the El Nino-Southern Oscillation cycle.

As smoke particles entered the clouds, they set off chain reactions that actually made the clouds brighter, bouncing more of the Sun's energy back to space.

Motivated by this "natural experiment," Wan and her colleagues wondered whether solar geoengineering could achieve a similar effect.

They used a powerful forecasting model to gauge what impact artificial marine cloud brightening over a vast rectangular zone in the equatorial Pacific would have had on the 1997-1998 and 2015-16 El Nino events.

This could theoretically be achieved by using ships fitted with nozzles that spray sea salt into the lower atmosphere.

El Ninos are linked with warming sea surfaces in the eastern tropical Pacific, with knock on effects globally including drier conditions and drought in Australia, wetter winters in East Africa, and warmer overall global temperatures.

After running several simulations, they found the intervention worked best when started early -- in June -- and continued through the following February.

"But the reason people would ever care about this is not temperature in a box in the Pacific, but how the impacts translate over land," said Wan.

Extreme weather events linked to El Nino have caused loss of life and trillions of dollars of economic damage.

The modeled cloud brightening reversed most of the temperature and precipitation effects -- those areas that got warmer under an El Nino were cooler, regions that got wetter instead became drier, and vice versa.

So what's the catch?

- Unknown consequences -

For starters, the technology isn't yet ready.

Teams around the world are developing the nozzles to spray sea salt into the sky, but the devices can't yet shoot nearly enough volume. Even if a nozzle is perfected, it would take roughly 2,400 ships to make the required impact.

Beyond the engineering challenges, there are further risks.

Not all regions of the world would benefit from reversing El Nino conditions, and the models showed unintended consequences, including warming over Europe and Asia.

"The other catch I would say is that we didn't look at long-term impacts," said Wan, including what would happen if marine cloud brightening was used repeatedly to suppress El Ninos.

Geoengineering has many detractors, who argue it creates a moral hazard by giving polluters a free pass to keep emitting if the climate can be artificially cooled. Wan disagrees.

"We're beyond the point now where we could just turn off emissions today and be totally fine, we're locked into warming already, and so the way that I viewed geoengineering is 'how can we reduce the worst of those impacts while we work on a long-term solution?'" she said.

"I think it would be irresponsible to not do the research, given that's the context we're in."

T.Maeda--JT